- 1、本文档共16页,可阅读全部内容。
- 2、有哪些信誉好的足球投注网站(book118)网站文档一经付费(服务费),不意味着购买了该文档的版权,仅供个人/单位学习、研究之用,不得用于商业用途,未经授权,严禁复制、发行、汇编、翻译或者网络传播等,侵权必究。
- 3、本站所有内容均由合作方或网友上传,本站不对文档的完整性、权威性及其观点立场正确性做任何保证或承诺!文档内容仅供研究参考,付费前请自行鉴别。如您付费,意味着您自己接受本站规则且自行承担风险,本站不退款、不进行额外附加服务;查看《如何避免下载的几个坑》。如果您已付费下载过本站文档,您可以点击 这里二次下载。
- 4、如文档侵犯商业秘密、侵犯著作权、侵犯人身权等,请点击“版权申诉”(推荐),也可以打举报电话:400-050-0827(电话支持时间:9:00-18:30)。
查看更多
外文资料原文OLED-Polypropylene Bio-CD SensorSrikanth Vengasandra, Yuankun Cai, David Grewell, Joseph Shinar, and Ruth Shinarc Department of Agricultural Biosystems Engineering Ames Laboratory - USDOE and Department of Physics AstronomyMicroelectronics Research Center and Department of Electrical and Computer Engineering Iowa State University, Ames, IA 50011, U.S.AABSTRACTWith the goal of developing microfluidic platforms for sensing applications, flash-free micro patterns were embossed in polypropylene surfaces with ultrasonic heating for a biosensing application. The embossed features were designed to act as reservoirs, valves, and reaction chambers to allow, in combination with a compact sensing platform, the monitoring of analyte levels using a standard PC-CD player. To generate the compact sensor, as an example, we chose the photoluminescence (PL)-based detection of lactate and glucose using an OLED-based sensing platform. Once embossed, the surface energy of the plastic substrate was chemically modified to make it hydrophilic. Reagents, placed in separate reservoirs, were directed through burst valves towards a reaction chamber via CD rotation. Lactate or glucose were monitored by measuring the effect of the related dissolved oxygen level on the PL decay time of an oxygen-sensitive dye, following analyte oxidation catalyzed by a suitable specific oxidase enzyme. The results demonstrate the potential of integrating OLEDs as excitation sources in PL-based sensors with microfluidic CD- based platforms, including for simultaneous multiple analyses.Keywords: Organic light-emitting diode, OLED, lab-on-a-CD, glucose sensor, lactate sensor1. INTRODUCTIONBiomedical micro electromechanical system (MEMS)-based sensing platforms fabricated on plastic substrates have the potential of e.g., being low cost, disposable, cross-contamination free, and sensitive. Additionally, such sensors show promise for high throughput and multianalyte detection. The advantages of such a lab-on-
文档评论(0)